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Yu, Lei, Xu, Xiaolong, Ni, Songyuan, Meng, Dan, Meng, Xue, Xu, Binghua (2025) Experimental and Molecular Dynamics Simulation Study on Sulfate Corrosion Resistance of Cellulose-Nanocrystal-Modified ECC. Applied Sciences, 15 (6). doi:10.3390/app15063205

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Reference TypeJournal (article/letter/editorial)
TitleExperimental and Molecular Dynamics Simulation Study on Sulfate Corrosion Resistance of Cellulose-Nanocrystal-Modified ECC
JournalApplied Sciences
AuthorsYu, LeiAuthor
Xu, XiaolongAuthor
Ni, SongyuanAuthor
Meng, DanAuthor
Meng, XueAuthor
Xu, BinghuaAuthor
Year2025 (March 14)Volume15
Issue6
PublisherMDPI AG
DOIdoi:10.3390/app15063205Search in ResearchGate
Generate Citation Formats
Mindat Ref. ID18176162Long-form Identifiermindat:1:5:18176162:6
GUID0
Full ReferenceYu, Lei, Xu, Xiaolong, Ni, Songyuan, Meng, Dan, Meng, Xue, Xu, Binghua (2025) Experimental and Molecular Dynamics Simulation Study on Sulfate Corrosion Resistance of Cellulose-Nanocrystal-Modified ECC. Applied Sciences, 15 (6). doi:10.3390/app15063205
Plain TextYu, Lei, Xu, Xiaolong, Ni, Songyuan, Meng, Dan, Meng, Xue, Xu, Binghua (2025) Experimental and Molecular Dynamics Simulation Study on Sulfate Corrosion Resistance of Cellulose-Nanocrystal-Modified ECC. Applied Sciences, 15 (6). doi:10.3390/app15063205
In(2025, March) Applied Sciences Vol. 15 (6). MDPI AG

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Lee (2019) Adv. Concr. Constr. Fire resistance evaluation of fiber-reinforced cement composites using cellulose nanocrystals 8, 311
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Fan, Q., Zheng, Y., He, C., Meng, D., Guo, Q., and Liu, Y. (2024). Effect of interfacial properties between polyethylene and polyvinyl alcohol fiber/cement matrix on properties of mortar and ECC. Struct. Concr., 1–16.


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